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Engineered Surfaces for Mitigation of Insect Residue Adhesion

机译:工程化表面,可减轻昆虫残留物的附着力

摘要

Maintenance of laminar flow under operational flight conditions is being investigated under NASA s Environmentally Responsible Aviation (ERA) Program. Among the challenges with natural laminar flow is the accretion of residues from insect impacts incurred during takeoff or landing. Depending on air speed, temperature, and wing structure, the critical residue height for laminar flow disruption can be as low as 4 microns near the leading edge. In this study, engineered surfaces designed to minimize insect residue adhesion were examined. The coatings studied included chemical compositions containing functional groups typically associated with abhesive (non-stick) surfaces. To reduce surface contact by liquids and enhance abhesion, the engineered surfaces consisted of these coatings doped with particulate additives to generate random surface topography, as well as coatings applied to laser ablated surfaces having precision patterned topographies. Performance evaluation of these surfaces included contact angle goniometry of pristine coatings and profilometry of surfaces after insect impacts were incurred in laboratory scale tests, wind tunnel tests and flight tests. The results illustrate the complexity of designing antifouling surfaces for effective insect contamination mitigation under dynamic conditions and suggest that superhydrophobic surfaces may not be the most effective solution for preventing insect contamination on aircraft wing leading edges.
机译:NASA的环境责任航空(ERA)计划正在研究在运行飞行条件下保持层流的问题。天然层流的挑战之一是在起飞或降落期间因昆虫撞击而产生的残留物增加。根据空气速度,温度和机翼结构的不同,用于层流破坏的临界残留物高度在前缘附近可能低至4微米。在这项研究中,检查了旨在最小化昆虫残留物附着力的工程表面。研究的涂料包括含有通常与粘性(不粘)表面相关的官能团的化学组合物。为了减少液体与表面的接触并增强附着力,工程表面由掺有微粒添加剂以产生随机表面形貌的这些涂层以及应用于具有精确图案化形貌的激光烧蚀表面的涂层组成。这些表面的性能评估包括原始涂层的接触角测角法和在实验室规模试验,风洞试验和飞行试验中引起昆虫撞击后表面的轮廓测定法。结果表明,设计防污表面以有效缓解动态条件下的昆虫污染的复杂性,并表明超疏水表面可能不是防止飞机机翼前缘上的昆虫污染的最有效解决方案。

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